Zhao Ludwig Sichen, Raithel Clara U, Tisdall M Dylan, Detre John A, Gottfried Jay A
bioRxiv. 2024 Aug 14:2024.01.15.575530. doi: 10.1101/2024.01.15.575530.
Functional magnetic resonance imaging (fMRI) using blood-oxygenation-level-dependent (BOLD) contrast relies on gradient echo echo-planar imaging (GE-EPI) to quantify dynamic susceptibility changes associated with the hemodynamic response to neural activity. However, acquiring BOLD fMRI in human olfactory regions is particularly challenging due to their proximity to the sinuses where large susceptibility gradients induce magnetic field distortions. BOLD fMRI of the human olfactory system is further complicated by respiratory artifacts that are highly correlated with event onsets in olfactory tasks. Multi-echo EPI (ME-EPI) acquires gradient echo data at multiple echo times (TEs) during a single acquisition and can leverage signal evolution over the multiple echo times to enhance BOLD sensitivity and reduce artifactual signal contributions. In the current study, we developed a ME-EPI acquisition protocol for olfactory task-based fMRI and demonstrated significant improvement in BOLD signal sensitivity over conventional single-echo EPI (1E-EPI). The observed improvement arose from both an increase in BOLD signal changes through a -weighted echo combination and a reduction in non-BOLD artifacts through the application of the Multi-Echo Independent Components Analysis (ME-ICA) denoising method. This study represents one of the first direct comparisons between 1E-EPI and ME-EPI in high-susceptibility regions and provides compelling evidence in favor of using ME-EPI for future task-based fMRI studies.
利用血氧水平依赖(BOLD)对比的功能磁共振成像(fMRI)依靠梯度回波平面回波成像(GE-EPI)来量化与对神经活动的血液动力学反应相关的动态磁化率变化。然而,在人类嗅觉区域获取BOLD fMRI特别具有挑战性,因为它们靠近鼻窦,在鼻窦处大的磁化率梯度会引起磁场畸变。人类嗅觉系统的BOLD fMRI还因与嗅觉任务中的事件起始高度相关的呼吸伪影而变得更加复杂。多回波EPI(ME-EPI)在单次采集期间的多个回波时间(TE)获取梯度回波数据,并可以利用多个回波时间上的信号演变来提高BOLD灵敏度并减少伪影信号贡献。在当前研究中,我们为基于嗅觉任务的fMRI开发了一种ME-EPI采集协议,并证明与传统的单回波EPI(1E-EPI)相比,BOLD信号灵敏度有显著提高。观察到的改善既源于通过加权回波组合使BOLD信号变化增加,也源于通过应用多回波独立成分分析(ME-ICA)去噪方法减少了非BOLD伪影。这项研究是在高磁化率区域对1E-EPI和ME-EPI进行的首批直接比较之一,并为在未来基于任务的fMRI研究中使用ME-EPI提供了有力证据。